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ROSH Approved Power Management ICs UCC27211DRMT Texas Instruments PMIC

ROSH Approved Power Management ICs UCC27211DRMT Texas Instruments PMIC

Brand Name Texas Instruments
Model Number UCC27211DRMT
Certification /
Place of Origin N/S
Minimum Order Quantity 1PCS
Price Negotiation
Payment Terms T/T
Supply Ability 9999999+PCS
Delivery Time 2-7 work days
Datesheet Contact for details
Lead free status Lead FreePB,Lead free/RoHS
Rosh Yes
Shipping ways DHL FEDEX UPS EMS TNT,DHL/FEDEX/EMS/CHINA POST OFFICE AND SO ON,DHL\UPS\Fedex\EMS\HK Post
D/c originals
Type Power Management ICs
Detailed Product Description

Power Management ICs Texas Instruments/TI UCC27211DRMT

ECAD ModulePCB Symbol,Footprint & 3D Model
Halogen FreeCompliant
Estimated EOL Date2031
Alternative Parts
(Cross-Reference)
NCP5106BDR2G; NCP5106ADR2G; MAX5063AASA+T; MAX5063CASA+;
ECCNEAR99
Introduction DateOctober 01, 2011
Family NameUCC27211
Supply and Demand StatusLimited
Fake Threat In the Open Market40 pct.
PopularityMedium
Win Source Part Number798690-UCC27211DRMT
MountingSMD
Rise / Fall Time (Typ)7.2ns, 5.5ns
Operating Temperature Range-40°C ~ 140°C (TJ)
Package8-VDFN Exposed Pad
Logic Voltage - VIL, VIH1.3V, 2.7V
Operating Supply Voltage8 V ~ 17 V
Manufacturer Package8-VSON (4x4)
High Side Voltage - Max (Bootstrap)120V
Current - Peak Output (Source, Sink)4A, 4A
Channel TypeIndependent
PackagingReel package
ManufacturerTexas Instruments
CategoriesIntegrated Circuits (ICs)
Gate TypeN-Channel MOSFET
Number of Drivers2
Driven ConfigurationHalf-Bridge

 

Features for the UCC27211

  • Drives Two N-Channel MOSFETs in High-Side
    and Low-Side Configuration With Independent
    Inputs
  • Maximum Boot Voltage 120-V DC
  • 4-A Sink, 4-A Source Output Currents
  • 0.9-Ω Pullup and Pulldown Resistance
  • Input Pins Can Tolerate –10 V to 20 V and Are
    Independent of Supply Voltage Range
  • TTL or Pseudo-CMOS Compatible Input Versions
  • 8-V to 17-V VDD Operating Range, (20-V Absolute
    Maximum)
  • 7.2-ns Rise and 5.5-ns Fall Time With 1000-pF
    Load
  • Fast Propagation Delay Times (18 ns Typical)
  • 2-ns Delay Matching
  • Symmetrical Undervoltage Lockout for High-Side
    and Low-Side Driver
  • All Industry Standard Packages Available (SOIC-8,
    PowerPAD™ SOIC-8, 4-mm × 4-mm SON-8
    and 4-mm × 4-mm SON-10)
  • Specified from –40 to 140 °C

Description for the UCC27211

The UCC27210 and UCC27211 drivers are based on the popular UCC27200 and UCC27201 MOSFET drivers, but offer several significant performance improvements. Peak output pull-up and pull-down current has been increased to 4-A source and 4-A sink, and pull-up and pull-down resistance have been reduced to 0.9 Ω, thereby allowing for driving large power MOSFETs with minimized switching losses during the transition through the Miller Plateau of the MOSFET. The input structure is now able to directly handle –10 VDC, which increases robustness and also allows direct interface to gate-drive transformers without using rectification diodes. The inputs are also independent of supply voltage and have a maximum rating of 20-V.

The switching node (HS pin) of the UCC2721x can handle –18 V maximum which allows the high-side channel to be protected from inherent negative voltages caused parasitic inductance and stray capacitance. The UCC27210 (Pseudo-CMOS inputs) and UCC27211 (TTL inputs) have increased hysteresis allowing for interface to analog or digital PWM controllers with enhanced noise immunity.

The low-side and high-side gate drivers are independently controlled and matched to 2 ns between the turnon and turnoff of each other.

An on-chip 120-V rated bootstrap diode eliminates the external discrete diodes. Undervoltage lockout is provided for both the high-side and the low-side drivers providing symmetric turnon and turnoff behavior and forcing the outputs low if the drive voltage is below the specified threshold.

Both devices are offered in 8-pin SOIC (D), PowerPAD SOIC-8 (DDA), 4-mm × 4-mm SON-8 (DRM) and SON-10 (DPR) packages.

Product Tags: UCC27211DRMT Power Management ICs   ROSH Power Management ICs   Texas Instruments PMIC  
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